• Title/Summary/Keyword: COSEM

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Data Interworking Model Between DLMS and LwM2M Protocol (DLMS와 LwM2M 프로토콜 간 데이터 연동 모델 연구)

  • Myoung, Nogil;Park, Myunghye;Kim, Younghyun;Kang, Donghoon;Eun, Changsoo
    • KEPCO Journal on Electric Power and Energy
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    • v.6 no.1
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    • pp.29-33
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    • 2020
  • Despite the same system architecture and operation principle, Advanced Metering Infrastructure (AMI) and Internet of Things (IoT) are recognized as a heterogeneous system. This is due to the different object modeling and communication protocols used in smart meters and sensors. However, data interworking between AMI and IoT is expected to be inevitable in the future. In this paper, we propose Device Language Message Specification (DLMS) to Lightweight Machine to Machine (LwM2M) conversion model. The proposed interworking model can reduce the packet size by 46.5% compared to that of the encapsulation method.

Detection of Potential Flow Paths of Leaked CO2 from Underground Storage Using Electrical Resistivity Survey (전기비저항탐사 방법에 의한 지중 저장 이산화탄소 누출 가능 경로 탐지)

  • Lim, Woo-Ri;Hamm, Se-Yeong;Hwang, Hak-Soo;Kim, Sung-Wook;Jeon, Hang-Tak
    • The Journal of Engineering Geology
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    • v.28 no.1
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    • pp.69-79
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    • 2018
  • The Korean government attempts to reduce $CO_2$ emissions by 37% to 314.7 Mt $CO_2$, down from the estimated 850.6 Mt $CO_2$ until 2030 in order to confront green house effect. In this context, in 2014, Korean government launched $CO_2$ Storage Environmental Management Research (K-COSEM) Center for carrying out pilot-scale research on $CO_2$ leakage from underground $CO_2$ storage facilities. For the detection of $CO_2$ leakage, it is necessary to identify hydrologeological and geophysical characteristics of the subject area. In the study site of Naesan-ri, Daeso-myeon, Eumseong-gun, Chungbuk Province, two times injection tests (June 28-July 24, 2017 and August 07-September 11, 2017) of $CO_2$ and $SF_6$ dissolved waters, respectively, was conducted to understand the leakage behavior of $CO_2$ from underground. The injection well was drilled to a depth of 24 m with a 21-m casing and screen interval of 21~24 m depth. Two times resistivity surveys on August 18, 2017 and September 1, 2017, were conducted for revealing the flow of the injected water as well as the electrical properties of the study site. The study results have shown that the high-resistivity zone and the low-resistivity zone are clearly contrasted with each other and the flow direction of the injected water is similar to natural groundwater flow. Besides, the low resistivity zone is widely formed from the depth of injection to the shallow topsoil, indicating that the weathered zone of high permeability has high $CO_2$ leakage potential.